采用粉末冶金法在3种温度下制备了60Ni40Fe,10Cu50Ni40Fe和65Cu25Ni10Fe3种合金,并分别作为惰性阳极在700℃钾冰晶石低温体系(CR=1.3)中进行5 A级的实验室规模铝电解,电解电流密度为0.5 A·cm-2,电解时间为8.0 h.3种NiFe合金阳极体系电解过程相差明显,不含有Cu的60Ni40Fe合金阳极电解过程槽电压波动较大,原铝的纯度仅为91.23%;65Cu25Ni10Fe合金阳极电解过程中槽电压比较平稳,平均槽电压为3.422 V,但是原铝中杂质Cu含量达到4.5%;10CuSONi40Fe合金阳极电解过程槽电压比较平稳,平均槽电压为3.829 V,原铝的纯度可达99.74%,是3种合金中电解性能最优的阳极.采用XRD,SEM和EDS等手段分析合金阳极电解后表面组成、结构及形貌的变化情况.表明3种NiFe合金阳极表面氧化膜成分相差明显,60Ni40Fe和65Cu25Ni10Fe合金阳极表面分别生成了NiO和Ni0.8Cu0.2O,结构比较疏松.10Cu50Ni40Fe合金阳极表面氧化膜的元素扫描表明各元素为层状分布,在合金基体表面生成了比较致密的Ni1.25Fe1.85O4,Ni1.25Fe1.85O4对合金阳极具有很好的保护作用,抑制了熔盐及氧对合金基体的腐蚀.
参考文献
[1] | 刘业翔;李劼.现代铝电解[M].北京:冶金工业出版社,2008:561. |
[2] | 丁海洋,卢世刚,阚素荣,张向军,杨娟玉.铝电解用金属惰性阳极的研究进展[J].稀有金属,2009(03):420-425. |
[3] | Pawlek R P.Inert anode:an update[A].TMS,2008:1039. |
[4] | Pawlek R P.Inert anode:an update[A].TMS,2004:283. |
[5] | Govorov, VA;Abakumov, AM;Rozova, MG;Borzenko, AG;Vassiliev, SY;Mazin, VM;Afanasov, MI;Fabritchnyi, PB;Tsirlina, GA;Antipov, EV .Sn2-2xSbxFexO4 solid solutions as possible inert anode materials in aluminum electrolysis[J].Chemistry of Materials,2005(11):3004-3011. |
[6] | Sadoway D R.A materials systems approach to selection and testing of nonconsumable anodes for the hall cell[A].TMS,1990:403. |
[7] | De Nora V;Nguyen T;Von Kaenel R;Antille J,Klinger L.Semi-vertical de Nora inert metallic anode[A].TMS,2007:501. |
[8] | Clucina M;Hyland M .Laboratory-scale performance of a bina-ry Cu-Al alloy as an anode for aluminium electrowinning[J].Corrosion Science,2006,48:2457. |
[9] | Clucina M;Hyland M.Laboratory scale testing of aluminium bronze as an inert anode for aluminium electrolysis[A].TMS,2005:523. |
[10] | De Nora V;Nguyen T T;Duruz J J .Aluminium electrowinning cell with metal-based anodes[P].Europe Patent:1554416,2003. |
[11] | Bradford D R .Inert anode metal life in low temperature reduc-tion process final technical report.No.1910-1400[R].United States Department of Energy (DOE),2005-6-30. |
[12] | De Nora V;Nguyen T;Von Kaenel R;Antille J,Klinger L.Semi-vertical de Nora inert metallic anode[A].TMS,2007:501. |
[13] | Nguyen T;De Nora V.Oxygen evolving inert metallic anode[A].TMS,2006:385. |
[14] | Shi Z N;Zhao X L;Xu J L;Cao X Z,Wang Z W,Gao B L.Anti-oxidation properties of iron-nickel alloys at 800 ~ 900 ℃[A].TMS,2008:1051. |
[15] | Shi Z N;Xu J L;Qiu Z X;Wang Z W,Gao B L.300 A bench-scale aluminum electrolysis cell with Fe-Ni-Al2 O3 compos-ite anode[A].TMS,2005:1219. |
[16] | Yang J H;Graczyk D G;Wunsch C;Hryn J N.Alumina solu-bility in KF-AlF3-based low-temperature electrolyte system[A].TMS,2007:537. |
[17] | 王旭,翟玉春.熔盐电解法制备CaB6及阳极保护的实验研究[J].稀有金属,2008(05):649-653. |
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